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High field behaviour of piezoelectric fibre composites

机译:压电纤维复合材料的高场性能

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This paper analyses strain and polarisation responses of 1-3 composites, which are related to the fibre and matrix properties. The validity of equations that predict the strain and polarisation of fibres from composite responses, and associated errors at high electric driving fields, are discussed. Surface profile measurements of single PZT rods in a polymer matrix, subjected to a static voltage, were made to investigate the effect of fibre aspect (diameter to length) ratio. Surface profiles, which show the active PZT rod extending from the passive polymer matrix, agree well with predictions made using finite element analysis. The results show that for a 1-3 composite to be treated as a homogeneous medium the fibre aspect ratio needs to be low. Commercially available PZT-5A composition fibres fabricated using four production methods were incorporated into 1-3 composites with fibre volume fractions ranging from 0.02 to 0.72, and with various aspect ratios, were evaluated. Strain-field and polarisation-field curves for the composites were obtained by testing the composites under electrical field cycles of +-2 kVmm~(-1). From these curves the strain and polarisation response of the fibres have been extracted using appropriate analytical equations. The saturation strain, saturation polarisation and coercive field values are reported for the four fibre types. The Viscous Plastic Process (VPP) and Viscous Suspension Spun (VSSP) fibres develop strains of approximately 4000 ppm. Reduced piezoelectric activity is seen in extruded fibres, which develop strains of 3000 ppm.
机译:本文分析了1-3种复合材料的应变和极化响应,这与纤维和基体的性能有关。讨论了根据复合响应预测纤维的应变和极化的方程的有效性,以及在高电场驱动下的相关误差。进行静态电压测试后,对聚合物基质中单个PZT棒的表面轮廓进行了测量,以研究纤维长径比(直径与长度)的影响。显示从被动聚合物基体伸出的主动PZT杆的表面轮廓与使用有限元分析得出的预测非常吻合。结果表明,要将1-3复合材料作为均匀介质处理,纤维的长径比必须较低。将使用四种生产方法制造的市售PZT-5A复合纤维掺入1-3种复合物中,纤维体积分数范围为0.02至0.72,并评估各种纵横比。通过在+ -2 kVmm〜(-1)的电场循环下对复合材料进行测试,获得了复合材料的应变场和极化场曲线。从这些曲线中,已经使用适当的分析方程式提取了光纤的应变和偏振响应。报告了四种光纤类型的饱和应变,饱和极化和矫顽场值。粘塑性工艺(VPP)和粘悬浮纺(VSSP)纤维产生的应变约为4000 ppm。在挤出的纤维中发现压电活性降低,这会产生3000 ppm的应变。

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